Read between the Molecules: Computational Insights into Organic Semiconductors

Abstract:

The performance and key electronic properties of molecular organic semiconductors are dictated by the interplay between the chemistry of the molecular core and the intermolecular factors of which manipulation has inspired both experimentalists and theorists. This Perspective presents major computational challenges and modern methodological strategies to advance the field. The discussion ranges from insights and design principles at the quantum chemical level, in-depth atomistic modeling based on multiscale protocols, morphological prediction and characterization as well as energy-property maps involving data-driven analysis. A personal overview of the past achievements and future direction is also provided.

SEEK ID: https://publications.h-its.org/publications/493

DOI: 10.1021/jacs.8b07985

Research Groups: Computational Carbon Chemistry

Publication type: Journal

Journal: Journal of the American Chemical Society

Citation: J. Am. Chem. Soc. 140(48):16370-16386

Date Published: 5th Nov 2018

Registered Mode: by DOI

Authors: Ganna Gryn’ova, Kun-Han Lin, Clémence Corminboeuf

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Citation
Gryn’ova, G., Lin, K.-H., & Corminboeuf, C. (2018). Read between the Molecules: Computational Insights into Organic Semiconductors. In Journal of the American Chemical Society (Vol. 140, Issue 48, pp. 16370–16386). American Chemical Society (ACS). https://doi.org/10.1021/jacs.8b07985
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Created: 5th Nov 2019 at 13:35

Last updated: 5th Mar 2024 at 21:23

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